Target-specific control of lymphoid-specific protein tyrosine phosphatase (Lyp) activity

Zandra E Walton1, Anthony C Bishop

  • 1Amherst College, Department of Chemistry, Amherst, MA 01002, United States.

Insights

Researchers developed a novel method to inhibit Lymphoid-specific protein tyrosine phosphatase (Lyp) activity using a small molecule. This engineered Lyp enzyme (Lyp-CCPGCC) can be selectively turned off by FlAsH, offering a new tool for studying Lyp in cell signaling and autoimmune diseases.

Area of Science:

  • Biochemistry
  • Immunology
  • Molecular Biology

Background:

  • Lymphoid-specific protein tyrosine phosphatase (Lyp) is crucial for human-leukocyte signaling.
  • Lyp is implicated in autoimmune disorders, making it a potential therapeutic target.

Purpose of the Study:

  • To develop a selective inhibitor for Lyp activity.
  • To create a tool for investigating Lyp's role in cell signaling and autoimmune disease progression.

Main Methods:

  • Engineered a mutant Lyp enzyme (Lyp-CCPGCC) with a tetracysteine motif insertion.
  • Utilized a cell-permeable biarsenical compound (FlAsH) to target and inhibit Lyp-CCPGCC.
  • Assayed inhibition using small-molecule and phosphorylated-peptide PTP substrates.

Main Results:

  • Lyp-CCPGCC retained wild-type activity without FlAsH.
  • FlAsH addition caused potent, specific, and rapid inhibition of Lyp-CCPGCC activity.
  • FlAsH specifically targeted overexpressed Lyp-CCPGCC in complex mixtures.

Conclusions:

  • FlAsH-mediated inhibition of Lyp-CCPGCC is a potent and specific method.
  • This approach is likely useful for targeting Lyp activity in engineered cells and autoimmune models.